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实验研究了超短脉冲激光的空间小尺度自聚焦的动态变化过程.具体实验过程是使经过正交细丝的衍射来实现激光的空间调制,然后通过非线性Kerr介质二硫化碳,随着输入功率的增大,超短脉冲开始出现小尺度自聚焦增长现象.实验发现,每个小尺度自聚焦峰值并不是随着功率的增大而无限地增长下去,而是在不同位置出现了新的调制增长点,这些新出现的增长与原有的增长相互竞争,最终导致了分裂成丝.通过数值模拟相应的传输过程,发现数值模拟结果与实验结果符合很好.
关键词:
小尺度自聚焦
高功率激光
超短脉冲 相似文献
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Based on the generalized nonlinear Schroedinger equation, we investigate efficient dispersive wave (DW) generation in a photonic crystal fiber (POF) by numerical simulation and discuss a way to control DW generation by using an initial input pulse chirp. It is shown that efficient red-shifted DW generation can be obtained in a PCF with negative dispersion slopes. The energy contained in the DWs is considerably decreased for both positively and negatively chirped pulses at the fiber output. This provides us with an opportunity to conveniently and efficiently manipulate the DW generation by controlling the pre-chirp of the soliton. Moreover, we also show that forth- and higher-order dispersion terms play Iittle part in deciding the evolution of DWs. 相似文献
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